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Chemistry of oxylipin pathways in marine diatoms

Articolo
Data di Pubblicazione:
2007
Abstract:
Oxylipins are important signal transduction molecules widely distributed in animals and plants where they regulate a variety of events associated with physiological and pathological processes. The family embraces several different metabolites that share a common origin from the oxygenase-catalyzed oxidation of polyunsaturated fatty acids. The biological role of these compounds has been especially studied in mammalians and higher plants, although a varied and very high concentration of these products has also been reported from marine macroalgae. This article gives a summary of our results concerning the oxylipin chemistry of marine diatoms, a major class of planktonic microalgae that discourage predation from their natural grazers, zooplanktonic copepods, using chemical warfare. These apparently harmless microscopic cells produce a plethora of oxylipins, including short-chain unsaturated aldehydes, hydroxyl-, keto-, and epoxyhydroxy fatty acid derivatives, that induce reproductive failure in copepods through abortions, congenital malformations, and reduced larval growth. The biochemical process involved in the production of these compounds shows a simple regulation based on decompartmentation and mixing of preexisting enzymes and requires hydrolysis of chloroplast-derived glycolipids to feed the downstream activities of C16 and C20 lipoxygenases.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
chemical ecology; lipid biochemistry; biosynthesis; structure elucidation; isolation
Elenco autori:
D'Ippolito, Giuliana; Fontana, Angelo; Cimino, Guido; Cutignano, Adele
Autori di Ateneo:
CUTIGNANO ADELE
D'IPPOLITO GIULIANA
FONTANA ANGELO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/150086
Pubblicato in:
PURE AND APPLIED CHEMISTRY (PRINT)
Journal
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